MISD Project Deliverables

Deliverable NumberWork PackageDeliverable DescriptionMilestoneDocument Link
1.1.01Technical feasibility study and requirements ML1
1.1.11MEP Design Integrations (conceptual and detailed where necessary)ML1
1.1.21Design review & Prototype TestingML2
1.1.31Sustainability Design & Energy Efficiency ReportsML3
1.1.41Integration with WP3ML3
1.1.51Collaboration and support for future useML3
1.21Functional testing laboratory and additional facilities to perform testsML1
1.31Participation in agreements with vendors and solution providersML3
1.41RFI for requested ENC functionalityML3
1.51Report assessing alternative innovative ENK applications and functionalityML3
1.61Technical design for eDCML4
1.71MVP use case partner engagement and selectionML4
1.81Field Design of a Single eDC ConfigurationML4
1.91Fieldlab Distributed eDC DeploymentML5
1.11Technical, operational and energy saving testingML5
1.111Validation of technical, ESG and operational performance and resultsML5
2.12Algorithms for task scheduling and orchestrationML1, ML3, ML4D2.1 - Document
2.22Multi server job modelsML1, ML3, ML4
2.32Adaptive algorithms for online resource allocationML1, ML3, ML4
2.42Energy-efficient algorithms for deployment planning of edge data centersML3, ML4
2.52Energy Flexibility Service Models & Orchestration Algorithms for Agility ML1, ML3, ML4
2.62Scalable energy-efficient deep learning algorithmsML1, ML3, ML4
2.72Energy Flexibility InterfacesML1D2.7 - Document
2.82Sustainability assessmentML1, ML2D2.8 - Document
2.92Open source sustainable orchestratorML2, ML5
2.12Network assessment and coordination of the optimization tool for network developmentML1, ML3, ML4
2.112Integration with DC (Energy) InfrastructureML1, ML3, ML4
2.122Design guidelinesML1
2.132Definition of building blocksML2
2.142Preliminary investigationML3
2.152Cutting-edge technology researchML4
2.162Development of orchestration layersML5
2.172Calculation and search algorithmML1, ML2, ML3, ML4, ML5
3.13Joint research reportML1
3.23Technical SpecificationsML1
3.33Functional SpecificationsML1
3.43Software developmentML3
3.53Edge cyber security analysisML2
3.63GUIML4
3.73Live in lab ML4
3.83Edge End UserML4
3.93Live in fieldML5
4.14Robust immersion cooling system for edge applicationsML1
4.24High TDP (thermal design power) immersion cooling system for edge applicationsML2
4.34High TDP (thermal design power) cooling system in serverML2
4.44Management and control systems for edge and sustainability scenariosML4
4.54Assessment of design impact on modular eDCs based on the latest thermal concepts and componentsML1
4.64Design Leadership for Thermal Management Components in the eDC ConceptML1
4.74Assessment of thermal harvesting and storage optionsML2
4.84Synergistically integrated system and facility for edge applicationsML4
4.94Thermochemical heat upgrade/storage system testingML4
5.15Integrative Learning Community DesignML1D5.1 - Document
5.25Toolbox to support inter-organizational cooperation and scenario development within the consortium to support the development of the innovation ecosystemML4
5.35Toolbox to support the uptake of innovations and skills development outside the consortium to support the uptake of innovationsML4
5.45Analysis report with use cases, requirements, and prospects for scale and growthML1
5.55One or more functional propositions and service descriptions. Benchmark report of propositions against current industry standards and alternatives Document describing the Requirements portal and transaction functionalityML2
5.65Development of use cases for energy transition partner servicesML3
5.75Investment case and business modelML3
5.85Generate a pool of suitable use cases and use case owners behind them. Setting up a set of rules and conditions, resulting in a use case contract. Pilot implementation of eDC in use case ecosystem. Connection and integration of local field lab in networked DC environmentML5